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This is to be done in MATLAB, any help would be appreciated! Problem 3: Dispersion penalty in transmission of analog-modulated light through an optical fiber:
This is to be done in MATLAB, any help would be appreciated!
Problem 3: Dispersion penalty in transmission of analog-modulated light through an optical fiber: Consider the effect of group velocity dispersion on an analog (..) modulated optical signal. Use the value for beta-2-1E-26 secA2/m. Ignore beta_0, beta_1 and beta_3. Plot the small-signal (..) transfer function ("Dispersion Penalty") for a 60 GHz analog signal frequency as a function of fiber length from zero to 100 km. a. b. What is the maximum length of fiber at 60 GHz? (the length at which the signal experiences a 3dB attenuation) Fix the fiber length to 10km, plot the transfer function (dispersion penalty) as a function of analog modulation frequency from 0 to 100 GHz c. d. What is the 3dB bandwidth of the optical fiber e. Explain why beta_0 and beta_1 don't affect the calculation of dispersion penalty (transfer function) linthe reasonforthe nuls i the specuquny fading) Problem 3: Dispersion penalty in transmission of analog-modulated light through an optical fiber: Consider the effect of group velocity dispersion on an analog (..) modulated optical signal. Use the value for beta-2-1E-26 secA2/m. Ignore beta_0, beta_1 and beta_3. Plot the small-signal (..) transfer function ("Dispersion Penalty") for a 60 GHz analog signal frequency as a function of fiber length from zero to 100 km. a. b. What is the maximum length of fiber at 60 GHz? (the length at which the signal experiences a 3dB attenuation) Fix the fiber length to 10km, plot the transfer function (dispersion penalty) as a function of analog modulation frequency from 0 to 100 GHz c. d. What is the 3dB bandwidth of the optical fiber e. Explain why beta_0 and beta_1 don't affect the calculation of dispersion penalty (transfer function) linthe reasonforthe nuls i the specuquny fading)Step by Step Solution
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